Results 231 to 240 of about 1,312,237 (285)
Applying interpersonal neuroscience for understanding classroom learning in students with ADHD. [PDF]
Reindl V, Fischer NL, Konrad K, Leong V.
europepmc +1 more source
By profiling the spatiotemporal hepatic landscape of CHB mouse models, the originally peri‐portal localized KCs migrated to the peri‐central in a CXCL9‐CXCR3‐dependent manner, facilitating their interaction with HBV+ hepatocytes. The interaction promoted LMD in KCs through ASGR1‐induced LXRα degradation, which, in turn, induced CSC formation via Stat3 ...
Jingqi Shi +18 more
wiley +1 more source
Motivational pathways from perceived teacher support to student engagement in EFL classes. [PDF]
Zhang X, Kim HJ.
europepmc +1 more source
Precise Regulation of Membrane Proteins: From Physical Technology to Biomolecular Strategy
This review summarizes the emerging strategies for the precise regulation of membrane proteins using physical stimuli and biomolecule‐based tools. These methods provide new insights into cell regulation and offer promising directions for future disease treatment.
Xiu Zhao +6 more
wiley +1 more source
DCRDF-Net: A Dual-Channel Reverse-Distillation Fusion Network for 3D Industrial Anomaly Detection. [PDF]
Wang C, Chen J, Zhang H.
europepmc +1 more source
Snord17, through interaction with Thoc3, promotes nuclear export and translation of Yy2 mRNA in Snord17+/+ ISCs. The Yy2 protein subsequently binds the Tead4 promoter to promote its transcription, activating Hippo signaling, which is essential for ISC maintenance.
Peikang Zhang +10 more
wiley +1 more source
Expanding Participation in Inclusive Physical Education: A Maker-Based Approach for Sport-Marginalized Students. [PDF]
Kwon Y, Kim D, Kang M, Cho G.
europepmc +1 more source
Hydrogen voltage gated channel 1 (HVCN1) is upregulated in microglia of both ALS patients and its mouse model. HVCN1 deficiency enhances microglial migration via suppressing Akt signaling, promotes neurotrophic capacity and motor function, and prolongs survival of the SOD1G93A ALS mice. This study identifies HVCN1 as a novel, promising druggable target
Fan Wang +16 more
wiley +1 more source

